[利用 4'-碳自由基合成修饰核苷]。

IF 0.3 4区 医学 Q4 PHARMACOLOGY & PHARMACY Yakugaku zasshi : Journal of the Pharmaceutical Society of Japan Pub Date : 2024-01-01 DOI:10.1248/yakushi.24-00117
Yuta Ito
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引用次数: 0

摘要

作为抗病毒药物和寡核苷酸疗法的原料,在 4'- 位上具有取代基的核苷倍受关注。4'-修饰核苷通常是通过在 4'- 位引入亲电或亲核取代基,利用离子反应合成的。然而,它们的合成方法有一些缺点,例如:(i) 难以控制 4'- 位的立体选择性;(ii) 需要复杂的保护-保护过程;(iii) 亲电和亲核物的范围有限。有鉴于此,我们认为在 4'- 位生成的碳自由基将是合成 4'- 改性核苷的有用中间体。在这篇综述中,我们总结了两种生成 4'-碳自由基的新方法。第一种方法利用自由基变形作用,涉及 4'- 位羟甲基的 β 断裂。另一种方法是利用自由基脱羧和 1,5-氢原子转移(1,5-HAT),在生成 4'-碳自由基的同时保留 4'-位上的羟甲基。这些方法可以快速简便地生成 4'-碳自由基,并提供各种 4'-修饰的核苷,包括 2',4'-杂交结构。
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[Synthesis of Modified Nucleosides Using 4'-Carbon Radicals].

Nucleosides with a substituent at the 4'-position have received much attention as antiviral drugs and as raw materials for oligonucleotide therapeutics. 4'-Modified nucleosides are generally synthesized using ionic reactions through the introduction of electrophilic or nucleophilic substituents at the 4'-position. However, their synthetic methods have some drawbacks; e.g., (i) it is difficult to control stereoselectivity at the 4'-position; (ii) complex protection-deprotection processes are required; (iii) the range of electrophiles and nucleophiles is limited. With this background, we considered that a carbon radical generated at the 4'-position would be a useful intermediate for the synthesis of 4'-modified nucleosides. In this review, two novel methods for the generation of 4'-carbon radicals are summarized. The first utilizes radical deformylation involving β-fragmentation of a hydroxymethyl group at the 4'-position. The other utilizes radical decarboxylation and 1,5-hydrogen atom transfer (1,5-HAT), which enables the generation of 4'-carbon radicals while retaining the hydroxymethyl group at the 4'-position. These methods enable the rapid and facile generation of 4'-carbon radicals and provide various 4'-modified nucleosides including 2',4'-bridged structures.

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来源期刊
CiteScore
0.60
自引率
0.00%
发文量
169
审稿时长
1 months
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